镍和钯烷基配合物中β-苯基消除作用的比较:Mizoroki-Heck 反应中的潜在相关过程

Jorge A. López, Diego A. Cabo, Pilar Palma, J. Cámpora
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引用次数: 0

摘要

目前,人们对在催化反应中避免使用贵金属非常感兴趣。开发镍催化剂以取代 Mizoroki-Heck 反应中的钯是这一研究领域的一个相关案例,因为这两种元素具有许多共同的化学特征。这篇论文的重点是烷基镍络合物中的β-苯基(β-Ph)消除反应。这是烯烃插入(或碳金属化)的微观逆过程,是赫克循环中的一个基本步骤,通常被认为是不可逆和决定选择性的。然而,通常情况下,碳金属化的潜在可逆性会被随后简单的 β-氢(β-H)消除所掩盖。当 β 氢消除受阻时,β 芳基消除可能随之发生。我们之前已经证明,由双齿配体支持的阳离子 2-甲基-2-苯基丙基(neophyl)钯配合物会发生 β-Ph 消去,这可以看作是烯烃去插入的一个例子。在这篇论文中,我们报告了β-Ph 消去反应也会发生在镍类似物中,在这种情况下,反应生成的苯基产物会发生快速水解。我们研究了这些过程的机理,并使用 DFT 计算比较了镍和钯催化剂的可行性。这些结果为设计 Heck 反应的镍基催化剂提供了相关信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Comparison of β–Phenyl Elimination in Nickel and Palladium Alkyl Complexes: A Potentially Relevant Process in the Mizoroki–Heck Reaction
There is currently much interest in avoiding precious metals in catalysis. The development of nickel catalysts to replace palladium in the Mizoroki–Heck reaction is a relevant case in this line of research, since both elements share many chemical features. This contribution focuses on β–phenyl (β–Ph) elimination in alkyl—nickel complexes. This is the microscopic reverse of olefin insertion (or carbometallation), a fundamental step in the Heck cycle that is usually considered irreversible and selectivity-determining. However, the potential reversibility of carbometallation is generally concealed by the facile β–hydrogen (β–H) elimination that follows. Where β–hydrogen elimination is hindered, β–aryl elimination may ensue. We have previously shown that cationic 2–methyl–2–phenylpropyl (neophyl) palladium complexes supported by bidentate ligands experience β–Ph elimination, which can be seen as an example of olefin de-insertion. In this contribution, we report that β–Ph elimination can also occur in their nickel analogs, in which case fast hydrolyses of the resulting phenyl product can follow the reaction. We investigated the mechanism of these processes and compared their feasibility for nickel and palladium catalysts using DFT calculations. These results are relevant information for the design of nickel-based catalysts for the Heck reaction.
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